Plant-Derived Anti-Cancer Therapeutics and Biopharmaceuticals
Ghyda Murad Hashim1, Mehdi Shahgolzari2, Kathleen Hefferon1
1Department of Cell & Systems Biology, University of Toronto, Toronto, ON M5S 3B2, Canada.
Abstract:
In spite of significant advancements in diagnosis and treatment, cancer remains one of the major threats to human health due to its ability to cause disease with high morbidity and mortality. A multifactorial and multitargeted approach is required towards intervention of the multitude of signaling pathways associated with carcinogenesis inclusive of angiogenesis and metastasis. In this context, plants provide an immense source of phytotherapeutics that show great promise as anticancer drugs. There is increasing epidemiological data indicating that diets rich in vegetables and fruits could decrease the risks of certain cancers. Several studies have proved that natural plant polyphenols, such as flavonoids, lignans, phenolic acids, alkaloids, phenylpropanoids, isoprenoids, terpenes, and stilbenes, could be used in anticancer prophylaxis and therapeutics by recruitment of mechanisms inclusive of antioxidant and anti-inflammatory activities and modulation of several molecular events associated with carcinogenesis. The current review discusses the anticancer activities of principal phytochemicals with focus on signaling circuits towards targeted cancer prophylaxis and therapy. Also addressed are plant-derived anti-cancer vaccines, nanoparticles, monoclonal antibodies, and immunotherapies. This review article brings to light the importance of plants and plant-based platforms as invaluable, low-cost sources of anti-cancer molecules of particular applicability in resource-poor developing countries.
Insights
Plants offer promising anticancer drugs, with phytochemicals like polyphenols aiding cancer prevention and treatment through antioxidant and anti-inflammatory actions. This review highlights plant-based therapies for targeted cancer prophylaxis and treatment, especially in resource-poor nations.
Area of Science:
- Phytochemistry
- Oncology
- Pharmacology
Background:
- Cancer remains a significant global health threat despite advances in treatment.
- Carcinogenesis involves complex signaling pathways, necessitating multifactorial therapeutic strategies.
- Dietary intake of fruits and vegetables is epidemiologically linked to reduced cancer risk.
Purpose of the Study:
- To review the anticancer activities of key phytochemicals.
- To explore plant-derived compounds for targeted cancer prophylaxis and therapy.
- To highlight the potential of plant-based platforms, including vaccines and immunotherapies, for cancer treatment.
Main Methods:
- Literature review of studies on plant-derived anticancer agents.
- Analysis of phytochemical mechanisms, including antioxidant and anti-inflammatory effects.
- Discussion of signaling pathways modulated by phytochemicals in carcinogenesis.
Main Results:
- Plant-derived polyphenols (flavonoids, lignans, etc.) exhibit significant anticancer potential.
- Phytochemicals exert anticancer effects via antioxidant, anti-inflammatory, and molecular pathway modulation.
- Plant-based platforms like vaccines, nanoparticles, and immunotherapies are emerging as therapeutic options.
Conclusions:
- Plants are a valuable source of low-cost anticancer molecules and therapeutic platforms.
- Phytochemicals offer a promising avenue for targeted cancer prophylaxis and treatment.
- Plant-based strategies are particularly relevant for resource-poor developing countries.
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